2 research outputs found
āļāļēāļĢāļāļĢāļ°āļĒāļļāļāļāđāđāļāđāđāļāļēāļāļĩāļ§āļĄāļ§āļĨāļāļāļīāļ TopâLit UpâDraft (TLUD) āđāļāļāļēāļĢāļĒāđāļāļĄāļŠāļĩāđāļāļĒāļŦāļāļēāļĄāļāđāļ§āļĒāļāļĄāļīāđāļāļāļąāļ (Curcuma longa L.)
Application of TopâLit UpâDraft (TLUD) Biomass Stove for Dyeing of Toei Nam with Turmeric (Curcuma longa L.)
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Surpanee Wunsri, Palachai Khaonuan, Noppadon Podkumnerd, Kosin Teeparuksapun, Nicha Prasongchan, Phattharapha Joypod and Rarin Khuawaraphan
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āļĢāļąāļāļāļāļāļ§āļēāļĄ: 11 āļĄāļīāļāļļāļāļēāļĒāļ 2566;Â āđāļāđāđāļāļāļāļāļ§āļēāļĄ: 4 āļāļĪāļĻāļāļīāļāļēāļĒāļ 2566;Â āļĒāļāļĄāļĢāļąāļāļāļĩāļāļīāļĄāļāđ: 6 āļāļĪāļĻāļāļīāļāļēāļĒāļ 2566; āļāļĩāļāļīāļĄāļāđāļāļāļāđāļĨāļāđ: 18 āļāļąāļāļ§āļēāļāļĄ 2566
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āļāļāļāļąāļāļĒāđāļ
āļāļēāļĢāļ§āļīāļāļąāļĒāļāļĢāļąāđāļāļāļĩāđāļĄāļĩāļ§āļąāļāļāļļāļāļĢāļ°āļŠāļāļāđāđāļāļāļēāļĢāļāļąāļāļāļēāđāļāļēāļāļĩāļ§āļĄāļ§āļĨāļāļāļīāļ TLUD āđāļĨāļ°āļāļģāļĄāļēāļāļĢāļ°āļĒāļļāļāļāđāđāļāđāđāļāļāļēāļĢāļĒāđāļāļĄāļŠāļĩāđāļāļĒāļŦāļāļēāļĄāļāđāļ§āļĒāļāļĄāļīāđāļāļāļąāļ āđāļāļĒāļāļĢāļ°āļāļāļāđāļāļēāļāļĩāļ§āļĄāļ§āļĨāļāļāļīāļ TLUD āļāļķāđāļāđāļāđāļāļąāļāļāļāļēāļ 200 āļĨāļīāļāļĢ āđāļāđāļāđāļāļĢāļāļŠāļĢāđāļēāļāļ āļēāļĒāļāļāļ āļāļēāļāļāļąāđāļāļāļāļŠāļāļāļŠāļĄāļĢāļĢāļāļāļ°āļāđāļ§āļĒāļ§āļīāļāļĩāļāļēāļĢāļāđāļĄāļāđāļģāđāļāļ·āļāļ (WBT) āļāļēāļāļāļąāđāļāļāļģāđāļāļēāđāļāļĒāđāļāļĄāļŠāļĩāđāļŠāđāļāđāļāļĒāļŦāļāļēāļĄāļāđāļ§āļĒāļŠāļēāļĢāļāļĢāļĢāļĄāļāļēāļāļī āđāļĨāļ°āļāļģāđāļŠāđāļāđāļāļĒāļŦāļāļēāļĄāļāļĩāđāļāđāļēāļāļāļēāļĢāļĒāđāļāļĄāļĄāļēāļāļķāđāļāļĢāļđāļāļāļĨāļīāļāļ āļąāļāļāđ āđāļāļĒāļāļēāļĢāļ§āļīāļāļąāļĒāļāļāļ§āđāļē āđāļāļēāļāļĩāļ§āļĄāļ§āļĨāļāļāļīāļ TLUD āļāļēāļāļāļąāļ 200 āļĨāļīāļāļĢ āļĄāļĩāļāļĢāļ°āļŠāļīāļāļāļīāļ āļēāļāđāļāļīāļāļāļ§āļēāļĄāļĢāđāļāļ (h) āđāļāđāļēāļāļąāļ 17.55Âą0.14% āļāļēāļāļāļēāļĢāļāļģāđāļāļēāđāļāļĒāđāļāļĄāđāļŠāđāļāđāļāļĒāļŦāļāļēāļĄāļāđāļ§āļĒāļāļĄāļīāđāļāļāļāļ§āđāļēāļāđāļēāļŠāļĩāļāđāļāļāđāļĨāļ°āļŦāļĨāļąāļāļāļēāļĢāļĒāđāļāļĄāļĄāļĩāļāđāļēāđāļāļāļāđāļēāļāļāļąāļ (p < 0.01) āđāļāļĒāļāļĩāđāļāļēāļĢāļĒāđāļāļĄāđāļāļŦāļāļēāļĄāđāļāļĒāļāđāļ§āļĒāļāļĄāļīāđāļāđāļĄāđāđāļāđāļāļāļēāļĢāļĨāļāļŠāļĄāļāļąāļāļīāđāļāļīāļāļāļĨ (āļāļ§āļēāļĄāļāđāļēāļāļāļēāļāđāļĢāļāļāļķāļ) āđāļĄāļ·āđāļāļāļģāđāļŠāđāļāđāļāļĒāļŦāļāļēāļĄāļāļĩāđāļāđāļēāļāļāļēāļĢāļĒāđāļāļĄāļāđāļ§āļĒāļāļĄāļīāđāļāđāļāļāļķāđāļāļĢāļđāļāļāļĨāļīāļāļ āļąāļāļāđāļāļĢāļ°āđāļāđāļēāļāļāļ§āđāļēāđāļŠāđāļāđāļāļĒāļŦāļāļēāļĄāļŠāļēāļĄāļēāļĢāļāļŠāļēāļāļāļķāđāļāļĢāļđāļāļāļĨāļīāļāļ āļąāļāļāđāđāļāđāļāļĒāđāļēāļāļāļĩ
āļāļģāļŠāļģāļāļąāļ:Â āđāļāļēāļāļĩāļ§āļĄāļ§āļĨāļāļāļīāļ TLUD Â āđāļāļĒāļŦāļāļēāļĄ Â āļĒāđāļāļĄāļŠāļĩ
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Abstract
The purpose of this research was to develop a TLUD biomass stove and applied for the dyeing of Toei Nam (Pentaspadon velutinus Hook.f.) with turmeric. A TLUD biomass stove was assembled using a 200âliter tank as an external structure. After that, the performance was investigated by using the water boiling test (WBT) method, then the stove was used for the dyeing of Toei Nam using turmeric. The results showed that TLUD biomass stove from a 200âliter tank has a thermal efficiency (h) of 17.55Âą0.14%. The TLUD biomass stove dyeing P. velutinus Hook.f. with turmeric found that the preâdyeing and postâdyeing color values were statistically different (p < 0.01). Dyeing of P. velutinus Hook.f. leaves with curcumin did not reduce the mechanical properties (tensile strength) and thus P. velutinus Hook.f. can be weaved into the product well.
Keywords: TLUD biomass stove, Pentaspadon velutinus Hook.f., Dyein
āļāļēāļĢāļĻāļķāļāļĐāļēāļāļēāļĢāļāļĨāļīāļāļāđāļēāļāļāļĩāļ§āļ āļēāļāđāļāļĒāļāļēāļĢāļŦāļĄāļąāļāļĢāđāļ§āļĄāļĢāļ°āļŦāļ§āđāļēāļāļĄāļđāļĨāđāļāđāļāļąāļāļŠāļēāļŦāļĢāđāļēāļĒāļŦāļēāļāļāļĢāļ°āļĢāļāļ
āļ§āļēāļĢāļŠāļēāļĢāļ§āļīāļāļēāļāļēāļĢāđāļĨāļ°āļ§āļīāļāļąāļĒ āļĄāļāļĢ.āļāļĢāļ°āļāļāļĢ, 13(1) : 12-24This work presented the production of biogas using anaerobic co-digestion between hydrilla verticillata (HV) from Songkhla Lake Basin and chicken manure (CM). From the study of compositions of both wastes, it was found that the COD of CM and HV were 11,200 and 14,400 mg/l and pH were 6.5 and 5.5, respectively. The biogas production using anaerobic single-digestion of untreated hydrilla verticillata (UHV) gave accumulative methane of 1,251 ml-CH4/g-VS and methane production of 78.28 L-CH4/kg-substrate was obtained. For hydrilla treated with 2% w/v NaOH (THV), the accumulative methane was 1,786 ml-CH4/g-VS and the obtained methane production was 91.87 L- CH4/kg-substrate which was 17.5 % increase when compared to the UHV. For the biogas production using anaerobic single-digestion of CM, it was found that the accumulative methane and methane production were 978 ml-CH4/g-VS and 78.28 L- CH4/kgsubstrate, respectively. These were lower than the studies using HV. The study of anaerobic co-digestion of HV and CM at three different ratios; 1:1, 2:1 and 3:1 was studied. It was found that the anaerobic co-digestion using THV and CM at ratio 3:1 and 2:1 gave the highest potential for biogas production. The accumulate methane of 3,202.20 and 2,079.19 ml- CH4/g-VS were obtained, respectively. The methane productions were 2.53 and 82.26 L-CH4/ton-substrate, for ratio 3:1 and 2:1, respectively which is no significant different at 95 % confidence interval.Rajamangala University of Technology Phra Nakho